JOURNAL ARTICLE

3D-printed and wireless piezoelectric tactile sensors (Conference Presentation)

Abstract

The sense of touch, also known as tactile recognition, is crucial for modern robotics to explore and understand ambient environments. This study used a commercial inkjet printer to additively manufacture a flexible and passive tactile sensor consisting of a piezoelectric P(VDF-trFE) thin film sandwiched by a pair of electrodes. Consistent and reliable printing of piezoelectric thin films is achieved by investigating ink preparation procedures, printer settings, and substrate surface treatment. Post-processing procedures, including drying and curing, are studied to ensure thin film uniformity and functionality. Eventually, in-situ signal processing and wireless data transmission circuits are developed and validated. The printed piezoelectric tactile sensor can be potentially used for human health monitoring and soft robotics due to its high flexibility and biocompatibility.

Keywords:
Tactile sensor Robotics Printed circuit board Materials science Soft robotics Piezoelectricity Electronic circuit Wireless 3d printed Computer science Transducer Inkwell Piezoelectric sensor Robot Electrical engineering Artificial intelligence Biomedical engineering Engineering Telecommunications

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Topics

Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering
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